CN215525227U - Raw water sampling device for mineral water production - Google Patents
Raw water sampling device for mineral water production Download PDFInfo
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- CN215525227U CN215525227U CN202121484188.3U CN202121484188U CN215525227U CN 215525227 U CN215525227 U CN 215525227U CN 202121484188 U CN202121484188 U CN 202121484188U CN 215525227 U CN215525227 U CN 215525227U
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Abstract
The utility model belongs to the field of tools for mineral water production, and particularly relates to a raw water sampling device for mineral water production, which comprises a lower base and an upper base, wherein the top of the lower base is provided with a row of sampling grooves, the lower end of the side wall of the lower base is provided with water discharge ports in one-to-one correspondence with the sampling grooves, a row of sliding holes in one-to-one correspondence with the sampling grooves are transversely penetrated through the upper base, each sliding hole is internally and slidably connected with a blocking plate, the left end of each sliding hole is fixedly provided with a left plug, each left plug is provided with a vent hole, each vent hole is connected with a gas pipe, the right end of each sliding hole is fixedly provided with a right plug, each right plug is provided with a water inlet, each water inlet is internally and internally inserted with a sealing plug, the bottoms of the lower base and the upper base are connected with a balance weight through a plurality of lower lifting ropes, and the top of the upper base is fixedly provided with an upper lifting rope. The utility model effectively improves the sampling efficiency and ensures the acquisition precision of the water sample.
Description
Technical Field
The utility model relates to a raw water sampling device for mineral water production, and belongs to the field of tools for mineral water production.
Background
In the production process of mineral water, the sampling detection of the mined water source is required. The existing sampling device has a single structure and function, only one water sample with a specific depth can be taken by one-time launching sampling, and when the sampling is carried out on different depths of a water source, the sampling process needs to be repeated for many times, so that the sampling efficiency is greatly reduced; in addition, the sampling container is easy to mix into water sources of other water layers in the process of collecting sewage and lifting and retrieving water, so that the purity of the collected water sample is not high, and the accuracy of the subsequent water sample detection result is influenced.
SUMMERY OF THE UTILITY MODEL
According to the defects in the prior art, the technical problems to be solved by the utility model are as follows: the raw water sampling device for mineral water production is high in water sample collection precision and high in efficiency.
The utility model relates to a raw water sampling device for mineral water production, which comprises a lower base and an upper base which are vertically welded together, wherein the top of the lower base is provided with a row of sampling grooves, the lower end of the side wall of the lower base is provided with water discharge ports which correspond to the sampling grooves one by one, each water discharge port is provided with a water discharge valve, the upper base is transversely penetrated with a row of sliding holes which correspond to the sampling grooves one by one, each sliding hole is connected with the corresponding sampling groove through a water inlet hole, each sliding hole is connected with a blocking plate in a sliding way, the left end of each sliding hole is fixed with a left plug, each left plug is provided with a vent hole, each vent hole is connected with a gas pipe, the end part of each gas pipe is provided with a vent valve, the right end of each sliding hole is fixed with a right plug, each right plug is provided with a water inlet, each water inlet is inserted with a sealing plug, each sealing plug is fixedly connected with the lower base through a connecting rope, the bottom of the lower base and the upper base is connected with a balance weight through a plurality of lower lifting ropes, an upper lifting rope is fixed on the top of the upper base.
The number of the sampling grooves is 3-5, and 3-5 water samples can be collected by one-time launching sampling.
The label pastes are pasted at the two ends of the gas transmission pipe, so that the labels can be marked, and the collected water sample is prevented from not corresponding to the depth of the drainage.
Compared with the prior art, the utility model has the beneficial effects that:
the raw water sampling device for mineral water production is provided with the row of sampling grooves, and a plurality of water samples can be collected by one-time drainage, so that the sampling efficiency is effectively improved; and, the sampling tank is in encapsulated situation all the time at the in-process that the collection of launching and rising were got back, has prevented effectively that the water source of other water layers from sneaking into the sampling tank to the collection precision of water sample has been guaranteed.
Drawings
FIG. 1 is a front view of the present invention;
FIG. 2 is a cross-sectional view taken at A-A of FIG. 1;
FIG. 3 is a top view of the present invention;
fig. 4 is a sectional view at B-B in fig. 3.
In the figure: 1. balancing weight; 2. a lifting rope is put down; 3. a water discharge outlet; 4. a water drain valve; 5. a lower base; 6. connecting ropes; 7. a sealing plug; 8. a water inlet; 9. a right plug; 10. an upper base; 11. lifting a rope; 12. a left plug; 13. a vent; 14. labeling; 15. a vent valve; 17. a slide hole; 18. a blocking plate; 19. a water inlet hole; 20. a top rod; 21. and (4) sampling the groove.
Detailed Description
Embodiments of the utility model are further described below with reference to the accompanying drawings:
as shown in figures 1 to 4, the raw water sampling device for mineral water production of the present invention comprises a lower base 5 and an upper base 10 which are vertically welded together, wherein a row of sampling grooves 21 are arranged on the top of the lower base 5, water discharge ports 3 which are in one-to-one correspondence with the sampling grooves 21 are arranged at the lower end of the side wall of the lower base 5, a water discharge valve 4 is arranged on each water discharge port 3, a row of slide holes 17 which are in one-to-one correspondence with the sampling grooves 21 transversely penetrate through the upper base 10, each slide hole 17 is connected with the corresponding sampling groove 21 through a water inlet hole 19, a blocking plate 18 is slidably connected in each slide hole 17, a left plug 12 is fixed at the left end of each slide hole 17, a vent 13 is arranged on each left plug 12, each vent 13 is connected with a gas pipe 16, a vent valve 15 is arranged at the end of each gas pipe 16, a right plug 9 is fixed at the right end of each slide hole 17, a water inlet 8 is arranged on each right plug 9, sealing plugs 7 are inserted into the water inlets 8, each sealing plug 7 is fixedly connected with the lower base 5 through a connecting rope 6, the bottoms of the lower base 5 and the upper base 10 are connected with counterweights 1 through a plurality of lower lifting ropes 2, and the top of the upper base 10 is fixed with an upper lifting rope 11.
In a preferred embodiment: the number of the sampling grooves 21 is 3-5, and 3-5 water samples can be collected by one-time launching sampling; the label stickers 14 are attached to both ends of the gas pipe 16, and can be marked with labels to prevent the collected water sample from not corresponding to the depth of the drainage.
When the sampling device is used, under the action of the balance weight 1, the sampling groove 21 is lowered to a certain depth of a water source through the upper lifting rope 11, then one of the gas pipes 16 is connected with an air outlet of a fan, gas pushes the blocking plate 18 to move rightwards through the gas pipe 16 and the vent 13, the corresponding sealing plug 7 can be ejected out by the ejector rod 20 of the blocking plate 18, then the gas pipe 16 and the fan are separated, under the water pressure, a water sample can enter the sampling groove 21 through the water inlet 8 and the water inlet 19, after the sampling groove 21 finishes collection, the gas pipe 16 is connected with the air outlet of the fan again, the blocking plate 18 moves rightwards to the rightmost end so as to block the water inlet 19, at the moment, the gas pipe 16 is separated from the fan, and the corresponding vent valve 15 is closed at the same time, so that the water sample collection of the sampling groove 21 can be finished; then transfer sampling groove 21 to another degree of depth of water source through last lifting rope 11, repeat above-mentioned process, can carry out the water sample collection of this degree of depth, until all to wait to adopt the degree of depth to gather and finish, put base 5 down out through last lifting rope 11, then through opening water drain valve 4, can discharge the water sample of sampling groove 21 collection through drain 3.
The raw water sampling device for mineral water production is provided with the row of sampling grooves 21, and a plurality of water samples can be collected by one-time drainage, so that the sampling efficiency is effectively improved; and, sampling tank 21 is in encapsulated situation all the time at the in-process that the lower water was gathered and was got back in the rising, has effectively prevented that the water source of other water layers from mixing into sampling tank 21 to the collection precision of water sample has been guaranteed.
Claims (3)
1. The utility model provides a raw water sampling device for mineral water production which characterized in that: the device comprises a lower base (5) and an upper base (10) which are vertically welded together, wherein the top of the lower base (5) is provided with a row of sampling grooves (21), the lower end of the side wall of the lower base (5) is provided with water discharge ports (3) which are in one-to-one correspondence with the sampling grooves (21), each water discharge port (3) is provided with a water discharge valve (4), the upper base (10) is transversely penetrated with a row of slide holes (17) which are in one-to-one correspondence with the sampling grooves (21), each slide hole (17) is connected with the corresponding sampling groove (21) through a water inlet hole (19), a blocking plate (18) is slidably connected in each slide hole (17), the left end of each slide hole (17) is fixedly provided with a left blocking head (12), each left blocking head (12) is provided with a vent hole (13), each vent hole (13) is connected with a gas pipe (16), the end part of each gas pipe (16) is provided with a vent valve (15), and the right end part of each slide hole (17) is fixedly provided with a right blocking head (9), all be equipped with water inlet (8) on each right end cap (9), sealing plug (7) have all been inserted in each water inlet (8), and each sealing plug (7) all are through a connecting rope (6) and lower base (5) fixed connection, and lower base (5) are connected with counter weight (1) through many lifting rope (2) down with the bottom of upper base (10), and the top of upper base (10) is fixed with lifting rope (11).
2. The raw water sampling device for mineral water production as set forth in claim 1, wherein: the number of the sampling grooves (21) is 3-5.
3. The raw water sampling device for mineral water production as set forth in claim 1 or 2, wherein: the label sticker (14) is stuck to both ends of the air conveying pipe (16).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202121484188.3U CN215525227U (en) | 2021-06-30 | 2021-06-30 | Raw water sampling device for mineral water production |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202121484188.3U CN215525227U (en) | 2021-06-30 | 2021-06-30 | Raw water sampling device for mineral water production |
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CN215525227U true CN215525227U (en) | 2022-01-14 |
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CN202121484188.3U Active CN215525227U (en) | 2021-06-30 | 2021-06-30 | Raw water sampling device for mineral water production |
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CN (1) | CN215525227U (en) |
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2021
- 2021-06-30 CN CN202121484188.3U patent/CN215525227U/en active Active
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